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import unittest
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import silenttestrunner
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from mercurial import util
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class testlrucachedict(unittest.TestCase):
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def testsimple(self):
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d = util.lrucachedict(4)
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self.assertEqual(d.capacity, 4)
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d.insert('a', 'va', cost=2)
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d['b'] = 'vb'
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d['c'] = 'vc'
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d.insert('d', 'vd', cost=42)
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self.assertEqual(d['a'], 'va')
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self.assertEqual(d['b'], 'vb')
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self.assertEqual(d['c'], 'vc')
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self.assertEqual(d['d'], 'vd')
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self.assertEqual(d.totalcost, 44)
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# 'a' should be dropped because it was least recently used.
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d['e'] = 've'
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self.assertNotIn('a', d)
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self.assertIsNone(d.get('a'))
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self.assertEqual(d.totalcost, 42)
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self.assertEqual(d['b'], 'vb')
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self.assertEqual(d['c'], 'vc')
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self.assertEqual(d['d'], 'vd')
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self.assertEqual(d['e'], 've')
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# Replacing item with different cost adjusts totalcost.
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d.insert('e', 've', cost=4)
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self.assertEqual(d.totalcost, 46)
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# Touch entries in some order (both get and set).
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d['e']
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d['c'] = 'vc2'
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d['d']
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d['b'] = 'vb2'
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# 'e' should be dropped now
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d['f'] = 'vf'
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self.assertNotIn('e', d)
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self.assertEqual(d['b'], 'vb2')
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self.assertEqual(d['c'], 'vc2')
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self.assertEqual(d['d'], 'vd')
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self.assertEqual(d['f'], 'vf')
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d.clear()
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for key in ('a', 'b', 'c', 'd', 'e', 'f'):
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self.assertNotIn(key, d)
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def testunfull(self):
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d = util.lrucachedict(4)
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d['a'] = 1
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d['b'] = 2
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d['a']
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d['b']
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for key in ('a', 'b'):
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self.assertIn(key, d)
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def testget(self):
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d = util.lrucachedict(4)
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d['a'] = 'va'
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d['b'] = 'vb'
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d['c'] = 'vc'
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self.assertIsNone(d.get('missing'))
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self.assertEqual(list(d), ['c', 'b', 'a'])
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self.assertEqual(d.get('a'), 'va')
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self.assertEqual(list(d), ['a', 'c', 'b'])
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def testpeek(self):
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d = util.lrucachedict(4)
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d['a'] = 'va'
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d['b'] = 'vb'
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d['c'] = 'vc'
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with self.assertRaises(KeyError):
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d.peek('missing')
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self.assertEqual(list(d), ['c', 'b', 'a'])
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self.assertIsNone(d.peek('missing', None))
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self.assertEqual(list(d), ['c', 'b', 'a'])
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self.assertEqual(d.peek('a'), 'va')
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self.assertEqual(list(d), ['c', 'b', 'a'])
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def testpop(self):
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d = util.lrucachedict(4)
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d['a'] = 'va'
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d['b'] = 'vb'
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d['c'] = 'vc'
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with self.assertRaises(KeyError):
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d.pop('missing')
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self.assertEqual(list(d), ['c', 'b', 'a'])
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self.assertIsNone(d.pop('missing', None))
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self.assertEqual(list(d), ['c', 'b', 'a'])
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self.assertEqual(d.pop('b'), 'vb')
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self.assertEqual(list(d), ['c', 'a'])
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def testcopypartial(self):
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d = util.lrucachedict(4)
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d.insert('a', 'va', cost=4)
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d.insert('b', 'vb', cost=2)
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dc = d.copy()
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self.assertEqual(len(dc), 2)
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self.assertEqual(dc.totalcost, 6)
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for key in ('a', 'b'):
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self.assertIn(key, dc)
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self.assertEqual(dc[key], 'v%s' % key)
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self.assertEqual(len(d), 2)
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for key in ('a', 'b'):
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self.assertIn(key, d)
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self.assertEqual(d[key], 'v%s' % key)
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d['c'] = 'vc'
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del d['b']
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self.assertEqual(d.totalcost, 4)
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dc = d.copy()
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self.assertEqual(len(dc), 2)
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self.assertEqual(dc.totalcost, 4)
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for key in ('a', 'c'):
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self.assertIn(key, dc)
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self.assertEqual(dc[key], 'v%s' % key)
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def testcopyempty(self):
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d = util.lrucachedict(4)
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dc = d.copy()
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self.assertEqual(len(dc), 0)
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def testcopyfull(self):
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d = util.lrucachedict(4)
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d.insert('a', 'va', cost=42)
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d['b'] = 'vb'
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d['c'] = 'vc'
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d['d'] = 'vd'
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dc = d.copy()
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for key in ('a', 'b', 'c', 'd'):
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self.assertIn(key, dc)
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self.assertEqual(dc[key], 'v%s' % key)
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self.assertEqual(d.totalcost, 42)
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self.assertEqual(dc.totalcost, 42)
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# 'a' should be dropped because it was least recently used.
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dc['e'] = 've'
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self.assertNotIn('a', dc)
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for key in ('b', 'c', 'd', 'e'):
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self.assertIn(key, dc)
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self.assertEqual(dc[key], 'v%s' % key)
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self.assertEqual(d.totalcost, 42)
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self.assertEqual(dc.totalcost, 0)
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# Contents and order of original dict should remain unchanged.
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dc['b'] = 'vb_new'
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self.assertEqual(list(iter(d)), ['d', 'c', 'b', 'a'])
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for key in ('a', 'b', 'c', 'd'):
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self.assertEqual(d[key], 'v%s' % key)
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d = util.lrucachedict(4, maxcost=42)
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d.insert('a', 'va', cost=5)
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d.insert('b', 'vb', cost=4)
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d.insert('c', 'vc', cost=3)
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dc = d.copy()
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self.assertEqual(dc.maxcost, 42)
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self.assertEqual(len(dc), 3)
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# Max cost can be lowered as part of copy.
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dc = d.copy(maxcost=10)
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self.assertEqual(dc.maxcost, 10)
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self.assertEqual(len(dc), 2)
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self.assertEqual(dc.totalcost, 7)
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self.assertIn('b', dc)
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self.assertIn('c', dc)
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def testcopydecreasecapacity(self):
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d = util.lrucachedict(5)
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d.insert('a', 'va', cost=4)
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d.insert('b', 'vb', cost=2)
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d['c'] = 'vc'
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d['d'] = 'vd'
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dc = d.copy(2)
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self.assertEqual(dc.totalcost, 0)
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for key in ('a', 'b'):
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self.assertNotIn(key, dc)
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for key in ('c', 'd'):
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self.assertIn(key, dc)
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self.assertEqual(dc[key], 'v%s' % key)
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dc.insert('e', 've', cost=7)
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self.assertEqual(dc.totalcost, 7)
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self.assertNotIn('c', dc)
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for key in ('d', 'e'):
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self.assertIn(key, dc)
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self.assertEqual(dc[key], 'v%s' % key)
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# Original should remain unchanged.
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self.assertEqual(d.totalcost, 6)
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for key in ('a', 'b', 'c', 'd'):
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self.assertIn(key, d)
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self.assertEqual(d[key], 'v%s' % key)
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def testcopyincreasecapacity(self):
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d = util.lrucachedict(5)
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d['a'] = 'va'
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d['b'] = 'vb'
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d['c'] = 'vc'
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d['d'] = 'vd'
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dc = d.copy(6)
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for key in ('a', 'b', 'c', 'd'):
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self.assertIn(key, dc)
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self.assertEqual(dc[key], 'v%s' % key)
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dc['e'] = 've'
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dc['f'] = 'vf'
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for key in ('a', 'b', 'c', 'd', 'e', 'f'):
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self.assertIn(key, dc)
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self.assertEqual(dc[key], 'v%s' % key)
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dc['g'] = 'vg'
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self.assertNotIn('a', dc)
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for key in ('b', 'c', 'd', 'e', 'f', 'g'):
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self.assertIn(key, dc)
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self.assertEqual(dc[key], 'v%s' % key)
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# Original should remain unchanged.
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for key in ('a', 'b', 'c', 'd'):
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self.assertIn(key, d)
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self.assertEqual(d[key], 'v%s' % key)
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def testpopoldest(self):
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d = util.lrucachedict(4)
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d.insert('a', 'va', cost=10)
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d.insert('b', 'vb', cost=5)
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self.assertEqual(len(d), 2)
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self.assertEqual(d.popoldest(), ('a', 'va'))
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self.assertEqual(len(d), 1)
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self.assertEqual(d.totalcost, 5)
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self.assertEqual(d.popoldest(), ('b', 'vb'))
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self.assertEqual(len(d), 0)
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self.assertEqual(d.totalcost, 0)
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self.assertIsNone(d.popoldest())
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d['a'] = 'va'
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d['b'] = 'vb'
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d['c'] = 'vc'
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d['d'] = 'vd'
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self.assertEqual(d.popoldest(), ('a', 'va'))
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self.assertEqual(len(d), 3)
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for key in ('b', 'c', 'd'):
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self.assertEqual(d[key], 'v%s' % key)
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d['a'] = 'va'
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self.assertEqual(d.popoldest(), ('b', 'vb'))
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def testmaxcost(self):
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# Item cost is zero by default.
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d = util.lrucachedict(6, maxcost=10)
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d['a'] = 'va'
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d['b'] = 'vb'
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d['c'] = 'vc'
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d['d'] = 'vd'
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self.assertEqual(len(d), 4)
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self.assertEqual(d.totalcost, 0)
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d.clear()
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# Insertion to exact cost threshold works without eviction.
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d.insert('a', 'va', cost=6)
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d.insert('b', 'vb', cost=4)
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self.assertEqual(len(d), 2)
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self.assertEqual(d['a'], 'va')
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self.assertEqual(d['b'], 'vb')
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# Inserting a new element with 0 cost works.
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d['c'] = 'vc'
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self.assertEqual(len(d), 3)
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# Inserting a new element with cost putting us above high
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# water mark evicts oldest single item.
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d.insert('d', 'vd', cost=1)
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self.assertEqual(len(d), 3)
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self.assertEqual(d.totalcost, 5)
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self.assertNotIn('a', d)
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for key in ('b', 'c', 'd'):
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self.assertEqual(d[key], 'v%s' % key)
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# Inserting a new element with enough room for just itself
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# evicts all items before.
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d.insert('e', 've', cost=10)
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self.assertEqual(len(d), 1)
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self.assertEqual(d.totalcost, 10)
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self.assertIn('e', d)
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# Inserting a new element with cost greater than threshold
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# still retains that item.
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d.insert('f', 'vf', cost=11)
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self.assertEqual(len(d), 1)
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self.assertEqual(d.totalcost, 11)
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self.assertIn('f', d)
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# Inserting a new element will evict the last item since it is
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# too large.
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d['g'] = 'vg'
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self.assertEqual(len(d), 1)
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self.assertEqual(d.totalcost, 0)
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self.assertIn('g', d)
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d.clear()
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d.insert('a', 'va', cost=7)
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d.insert('b', 'vb', cost=3)
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self.assertEqual(len(d), 2)
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# Replacing a value with smaller cost won't result in eviction.
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d.insert('b', 'vb2', cost=2)
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self.assertEqual(len(d), 2)
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# Replacing a value with a higher cost will evict when threshold
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# exceeded.
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d.insert('b', 'vb3', cost=4)
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self.assertEqual(len(d), 1)
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self.assertNotIn('a', d)
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def testmaxcostcomplex(self):
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d = util.lrucachedict(100, maxcost=100)
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d.insert('a', 'va', cost=9)
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d.insert('b', 'vb', cost=21)
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d.insert('c', 'vc', cost=7)
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d.insert('d', 'vc', cost=50)
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self.assertEqual(d.totalcost, 87)
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# Inserting new element should free multiple elements so we hit
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# low water mark.
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d.insert('e', 'vd', cost=25)
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self.assertEqual(len(d), 2)
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self.assertNotIn('a', d)
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self.assertNotIn('b', d)
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self.assertNotIn('c', d)
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self.assertIn('d', d)
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self.assertIn('e', d)
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if __name__ == '__main__':
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silenttestrunner.main(__name__)
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